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Logic synthesis and optimization are essential steps in digital circuit design, as they transform a high-level description of a circuit into a low-level implementation that meets certain ...
The NMOS-like RRAM gates are a set of in-array high-performance RRAM gates. This work proposes an improved synthesis method of logic circuits based on the NMOS-like RRAM gates. The operations of the ...
Logic synthesis and optimization can offer several advantages to digital circuit designers. For instance, they can save time and effort by automating the translation of a high-level design into a ...
Reversible or information-lossless circuits have applications in digital signal processing, communication, computer graphics, and cryptography. They are also a fundamental requirement in the emerging ...
The essence of logic synthesis oriented toward energy-efficiency requires finding a circuit structure in which the number of state transitions is minimized. Switching global clock networks are ...
Timing closure has become the bane of the logic designer's existence. At 0.18-micron feature sizes, a seamless handoff from high-level design to physical design is increasingly impossible. Clearly, ...
VHDL and Verilog are hardware description languages, used to describe and define logic circuits. They’re typically used to design ASICs and to program FPGAs, essentially using software to def… ...
The paper presents an outline of a simple synthesis method of energy-efficient FSMs. The idea consists in using local clock gating to selectively block the clock signal, if no transition of a state of ...
The conversion of a high-level electronic circuit description into a list of logic gates and their interconnections, called the "netlist." Every logic synthesis program understands some subset of ...